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Expression of notch signaling components in cutaneous foreign body and sarcoidal granulomas and fusing macrophages

机译:皮肤异物和卵巢肉芽肿和融合巨噬细胞的Notch信号传导组分的表达

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The evolutionarily conserved Notch signaling pathway affects tissue-specific cell differentiation, proliferation, and apoptosis. In the immune system, Notch has been implicated in the development and function of both adoptive and innate immune cells. Notch signaling is initiated by Notch receptor binding to cognate ligands, which results in the enzymatic cleavage and intranuclear translocation of the intracellular domain of Notch receptor (ICN). Recent murine models of chronic inflammation highlighted a critical role for a Notch ligand, Delta-like ligand (Dll)-4, in granuloma formation. In this study, we aimed to assess Notch-1 receptor activation and Dll4 expression in human cutaneous granulomas and in cultured human macrophages and multinucleated giant cells. ICN1 and Dll4 expression was evaluated by immunohistochemistry of cutaneous foreign body (n = 15) and sarcoidal (n = 19) granulomas. The results showed consistent intranuclear staining for ICN1 in foreign body but not in sarcoidal granulomas and strong cytoplasmic staining for Dll4 in mononuclear histiocytes and multinucleate giant cells in both types of granulomas. Additionally, immunofluorescence confocal microscopy showed ICN1 and Dll4 expression by cultured human macrophages undergoing fusion in the presence of granulocyte-macrophage colony-stimulating factor and interleukin-4. These findings indicate a potential role for the Notch-1-Dll4 signaling pathway in foreign body-induced granulomatous reactions and possibly distinct Notch pathway utilization in sarcoidal granulomas.
机译:进化保守的陷波信号通路影响组织特异性细胞分化,增殖和凋亡。在免疫系统中,缺口涉及养成和先天免疫细胞的开发和功能。 Notch信号传导由Notch受体结合与同源配体引发,这导致缺口受体(ICN)细胞内结构域的酶促切割和顽耳易位。最近的慢性炎症的小鼠模型强调了肉芽肿形成的甜点配体,δ状配体(DLL)-4的关键作用。在这项研究中,我们旨在评估人类皮肤肉芽肿和培养的人巨噬细胞和多核巨细胞中的Notch-1受体激活和DLL4表达。通过免疫组织化学来评估ICN1和DLL4表达,用皮肤异物(n = 15)和sarcoidal(n = 19)肉芽肿。结果表明,异物中ICN1的核核染色一致,但在单核组织细胞和两种类型的单核组织细胞和多核巨细胞中的DLL4中具有强烈的细胞质染色和强细胞质染色。另外,免疫荧光共聚焦显微镜显示ICN1和DLL4表达,在粒细胞 - 巨噬细胞菌落刺激因子和白细胞介素-4存在下融合融合。这些发现表明,异物诱导的肉芽肿反应中的Notch-1-DLL4信号传导途径以及在术中颗粒组织中可能不同的凹口途径使用的潜在作用。

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